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Control of Acoustic Signal Processing in Physiological Experiments Using PSoCs

机译:使用PSoC在生理实验中控制声信号处理

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摘要

Physiological investigations of the structure and function of the normal auditory system are technologically demanding, requiring electronic devices for generating and processing acoustic signals and for detecting, capturing and processing neural responses. Controllers for such custom electronic devices in physiological laboratories must be robust, configurable and embed-able. Recent advances in embedded systems have provided such a flexible, low-cost and reconfigurable technology: the programmable system-on-chip (PSoC), which integrates a microcontroller with programmable analogue and digital functions in a single chip. This makes it an ideal technology to be embedded in experimental equipment to allow flexible computer control. Using PSoC technology it is possible for a single design of circuit board and firmware to control multiple applications such as attenuation, filtering and amplification. Application programs to control devices, log and process data can be developed using various software environments. In the current application, a single driver was developed for multiple software environments such as Matlab, BrainWare or Visual Studio. Here we describe an instantiation of an embedded PSoC based hardware solution with appropriate firmware that provides full accurate and precise control of a very complex and sophisticated auditory physiological laboratory that includes attenuators, low-pass filters and amplifiers.
机译:正常听觉系统的结构和功能的生理研究对技术要求很高,需要电子设备来生成和处理声音信号以及检测,捕获和处理神经反应。生理实验室中用于此类定制电子设备的控制器必须坚固,可配置且可嵌入。嵌入式系统的最新进展提供了这样一种灵活,低成本和可重新配置的技术:可编程片上系统(PSoC),它在单个芯片中集成了具有可编程模拟和数字功能的微控制器。这使其成为嵌入实验设备中以实现灵活的计算机控制的理想技术。使用PSoC技术,电路板和固件的单一设计就可以控制多种应用,例如衰减,滤波和放大。可以使用各种软件环境来开发用于控制设备,记录和处理数据的应用程序。在当前应用程序中,针对多个软件环境(例如Matlab,BrainWare或Visual Studio)开发了单个驱动程序。在这里,我们描述了具有适当固件的基于嵌入式PSoC的硬件解决方案的实例化,该固件可对包括衰减器,低通滤波器和放大器的非常复杂和复杂的听觉生理实验室提供完全精确的控制。

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